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-Bibliografia

[1] AA.VV. “The educational CD-ROM”. Loctite Italia, Milano, 2000.

[2] ASM International Handbook Committee. “Adhesives and sealants”. Engineered Materials Handbook, 1990; v.3.

[3] R.D. Adams, W.C. Wake. “Structural adhesive joints in engineering”. Elsevier applied science publishers, Londra, 1984.

[4] S. Garzino. “Analisi sperimentale della resistenza e dell’assorbimento di energia durante il collasso plastico di strutture incollate”. Tesi di laurea; Politecnico di Torino, A.A. 2000/2001.

[5] AA.VV. “Loctite Worldwide Design Handbook”. Loctite Europa, Monaco, 1995.

[6] Deutsches Reichspatent DRP-Nr. 98517, 1897.

[7] S.J. Muraski. “American autos in the clinch”. Machine Design, 1990; v. 62: pp. 48-54.

[8] S. Gao, L. Budde. “Mechanism of mechanical press joining”. International Journal of Machine Tools & Manufacture, 1994; v. 34 (n° 5): pp. 641-657.

[9] P. Carter-Roberts. “In a clinch”. Assembly, 2002 ; v. 45 (n° 5): p. 56.

[10] J.P. Varis. “The suitability of round clinching tools for high strength structural steel”. Thin-Walled Structures, 2002; v. 40 (n° 3): pp. 225-238.

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148 -[12] J.P. Varis, J. Lepistö. “A simple testing-based procedure and simulation of the clinching process using finite element analysis for establishing clinching parameters”. Thin-Walled Structures, 2003; article in press.

[13] www.attexor.com

[14] J.P. Varis. “A novel procedure for establishing clinching parameters for high strength steel sheet”. Dissertation; Lappeenranta, 2000.

[15] V. Hamel, J.M. Roelandt, J.N. Gracel, F. Schmit. “Finite element modeling of clinch forming with automatic remeshing”. Computers & Structures, 1997; v. 77 (n°2): pp. 185-200.

[16] J. Gibmeier, N. Rode, R. Lin Peng, M. Odén, B. Scholtes. “Residual stress in clinched joints of metal”. Applied Physics A: Materials Science & Processing, 2002; v. 74 (Suppl.): pp. S1440-S1442.

[17] D.G. Saathoff, P.K. Mallick. “Static and fatigue strength evaluation of clinched joints in aluminium alloy”. SAE Special Publications, 1998; v. 1341: pp. 77-83.

[18] N. Nong, O. Keju, Z. Yu, Q. Zhiyuam, T. Changcheng, L. Feipeng. “Research on press joining technology for automotive metallic sheets”. Journal of Materials Processing Technology, 2003; v. 137: pp. 159-163.

[19] H. Mizukoshi, H. Okada. “Fatigue properties of mechanical fastening joints”. Materials Science Forum, 1997; v. 242: pp. 231-238.

[20] I. Pearson. “Adding welded/mechanical fastening to adhesive-bonded joints”. Automotive Engineer, 1995; v. 20 (n° 4): pp. 24-25.

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149 -[22] E. Manfredi, E. Calabrò, F. Cosci, S. Martini. “Attività di studio e ricerca su giunti saldati a punti”. Università degli studi di Pisa, DIMNP, RL 827(99).

[23] AA.VV. “Product description sheet Hysol® 9466”. Loctite Research, Development & Engineering, Dublin, 2002.

[24] AA.VV. “Joining sheet metal and extrusion without additional joining parts; general principles”. Böllhoff Systemtechnik, Bielefeld, Germany, 2002.

[25] S. Barsali, G.C. Barsotti, U. Rosa. “Lezioni di disegno di macchine”. Editrice San Marco, Lucca, 1993.

[26] R.C. Juvinall, K.M. Marshek. “Fondamenti della progettazione dei componenti delle macchine”. Ed. ETS, Pisa, 1993.

[27] A. Higgins. “Adesive bonding of aircraft structures”. International Journal of Adhesion & Adhesives, 2000; v. 20: pp. 367-376.

[28] Annual Book of ASTM Standards. “Terminology”. v. 15.06; norma: D 907.

[29] Annual Book of ASTM Standards. “Standard test method for peel resistance of adhesives (T-peel test)”. v. 15.06; norma: D 1876-93.

[30] Annual Book of ASTM Standards. “Standard test method for strength properties of adhesives in shear by tension loading of single lap-joint laminated assemblies”. v. 15.06; norma: D 3165-91.

[31] Norma Europea EN 10002 Parte 1a. “Materiali metallici – Prova di trazione – Metodo di prova (a temperatura ambiente)”

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150 -[33] P. Charbonnet, A. Clad, H. Fant-Jaeckels, J.L. Thirion. “Weld bonding: a very well adapted joining technique to decrease the weight of steel structures”. La Revue de Métallurgie-CIT; 543; April, 2000.

[34] S.M. Darwish, A. Ghanya. “Critical assessment of weld-bonded technologies”. Journal of Materials Processing Technology, 2000; v. 105: p. 221.

[35] S.M. Darwish. “Weldbonding strengthens and balances the stresses in spot weld dissimilar thickness joints”. Journal of Materials Processing Technology, 2003; v. 134: pp. 352-362.

[36] S.M. Darwish, A. Al-Samhan. “Stregth prediction of weld-bonded joints”. International Journal of Adhesion & Adhesives, 2003; v. 23 (n° 1): pp. 23-28.

[37] S.M. Darwish, A. Al-Samhan. “Peel and shear strength of spot-welded and weld-bonded dissimilar thickness joints”. Journal of Materials Processing Technology, 2004; v. 147 (n° 1): pp. 51-59.

[38] S.M. Darwish, A. Al-Samhan. “Design rationale of wld-bonded joints”. International Journal of Adhesion & Adhesives, 2004; v. 24 (n° 5): pp. 367-377.

[39] A. Melander, M. Larsson, H: Stensiö, A. Gustavsson, J. Linder. “Fatigue performance of weld-bonded high strength sheet steels tested in Artic, room temperature and tropical environments”. International Journal of Adhesion & Adhesives, 2000; v. 20: pp. 415-425.

[40] E. Manfredi. “Complementi di progettazione dei componenti delle machine”. Dipartimento di costruzioni meccaniche e nucleari. LZ 674(95). A.A. 1994-95.

[41] D. Plausinis, J.K. Spelt. “Designing for time-dependent crack growth in adesive joints”. International Journal of Adhesion & Adhesives, 1995; v. 15: pp. 143-154.

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151 -[42] D. Plausinis, J.K. Spelt. “Application of a new constant G load-jig to creep crack growthin adhesive joints”. International Journal of Adhesion & Adhesives, 1995; v. 15: pp. 225-232.

[43] J.A.M Ferreira, P.N. Reis, J.D.M. Costa, M.O.W. Richardson. “Fatigue behaviour of composite adhesive lap joints”. Composite Science and Technology, 2002; v. 62: pp. 1373-1379.

[44] M. Goland, E. Reissner. “The stresses in adhesives joints”. Journal of Applied Mech.

[45] D. Barletta. “Giunzioni incollate di impiego aeronautico”. Tesi di laurea; Università degli studi di Pisa, A.A. 2002/2003.

[46] C.V. Cagle. “Handbook of adesive bonding”. Mc Graw-Hill, 1973.

[47] O. Volkersen. “Rivet strength distribution in tensile-stressed rivet joints with constant cross-section”. Luftfahrforschung, 1938; v.15 (n° 1,2): pp. 41-47

[48] M. Goland, E. Reissner. “The stresses in cemented joints”. Journal of Applied Mech., Transaction by ASME, 1944; v 66: pp. A17-A27.

[49] I.U. Ojalvo, H.L. Eidinoff. “Bond thickness effects upon stresses in single-lap adhesive joints”. AAIA J, 1978; v. 16 (n° 3): pp. 204-211.

[50] L.J.Hart-Smith. “Adhesive bonded single-lap joints-technical report”. CR-112236 (NASA, Langley Research Centre, January 1973).

[51] L.J.Hart-Smith. “Adhesive bonded double-lap joints”. CR-112235 (NASA, Langley Research Centre, January 1973).

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152 -[52] L.J.Hart-Smith. “Adhesive bonded scarf- and stepped-lap joints”. CR-112237 (NASA, Langley Research Centre, January 1973).

[53] D.A. Bigwood, A.D. Crocombe. “Elastic analysis and engineering design formulae for bonded joints”. International Journal of Adhesion & Adhesives, 1989; v. 9 (n° 4): pp. 229-242.

[54] D.A. Bigwood, A.D. Crocombe. “Non-linear adhesive bonded joint design analysis”. International Journal of Adhesion & Adhesives, 1990; v. 10 (n° 1): pp. 31-41.

[55] D.A. Bigwood, A.D. Crocombe. “Analysing dtructural adhesive joints for failure”. International Journal of Adhesion & Adhesives, 1990; v. 10 (n° 3): pp. 167-178.

[56] D.A. Bigwood, A.D. Crocombe. “Development of a full elasto-plastic adhesive joint design analysis”. Journal of Strain Analysis, 1992; v. 27 (n° 4): pp. 211-218.

[57] G. Zhang. “Fatigue life prediction of spot-welded structures based on FE-methods – Part II: FE-modelling of a spot welded structure”. Report No. 1 of the Brite-EuRam Project BE 96-3451 “FADIN”, 1998.

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